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T cells genetically modified to express an anti–B-Cell maturation antigen chimeric antigen receptor cause remissions of poor-prognosis relapsed multiple myeloma

  • Jennifer N. Brudno
  • , Irina Maric
  • , Steven D. Hartman
  • , Jeremy J. Rose
  • , Michael Wang
  • , Norris Lam
  • , Maryalice Stetler-Stevenson
  • , Dalia Salem
  • , Constance Yuan
  • , Steven Pavletic
  • , Jennifer A. Kanakry
  • , Syed Abbas Ali
  • , Lekha Mikkilineni
  • , Steven A. Feldman
  • , David F. Stroncek
  • , Brenna G. Hansen
  • , Judith Lawrence
  • , Rashmika Patel
  • , Frances Hakim
  • , Ronald E. Gress
  • James N. Kochenderfer

Research output: Contribution to journalArticlepeer-review

Abstract

Purpose Therapies with novel mechanisms of action are needed for multiple myeloma (MM). T cells can be genetically modified to express chimeric antigen receptors (CARs), which are artificial proteins that target T cells to antigens. B-cell maturation antigen (BCMA) is expressed by normal and malignant plasma cells but not normal essential cells. We conducted the first-in-humans clinical trial, to our knowledge, of T cells expressing a CAR targeting BCMA (CAR-BCMA). Patients and Methods Sixteen patients received 9 3 10 6 CAR-BCMA T cells/kg at the highest dose level of the trial; we are reporting results of these 16 patients. The patients had a median of 9.5 prior lines of MM therapy. Sixty-three percent of patients had MM refractory to the last treatment regimen before protocol enrollment. T cells were transduced with a g-retroviral vector encoding CAR-BCMA. Patients received CAR-BCMA T cells after a conditioning chemotherapy regimen of cyclophosphamide and fludarabine. Results The overall response rate was 81%, with 63% very good partial response or complete response. Median event-free survival was 31 weeks. Responses included eradication of extensive bone marrow myeloma and resolution of soft-tissue plasmacytomas. All 11 patients who obtained an anti-MM response of partial response or better and had MM evaluable for minimal residual disease obtained bone marrow minimal residual disease–negative status. High peak blood CAR + cell levels were associated with anti-MM responses. Cytokine-release syndrome toxicities were severe in some cases but were reversible. Blood CAR-BCMA T cells were predominantly highly differentiated CD8 + T cells 6 to 9 days after infusion. BCMA antigen loss from MM was observed. Conclusion CAR-BCMA T cells had substantial activity against heavily treated relapsed/refractory MM. Our results should encourage additional development of CAR T-cell therapies for MM.

Original languageEnglish (US)
Pages (from-to)2267-2280
Number of pages14
JournalJournal of Clinical Oncology
Volume36
Issue number22
DOIs
StatePublished - Aug 1 2018

ASJC Scopus subject areas

  • Oncology
  • Cancer Research

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